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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >The Iceland plume in space and time: a Sr-Nd-Pb-Hf study of the North Atlantic rifted margin
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The Iceland plume in space and time: a Sr-Nd-Pb-Hf study of the North Atlantic rifted margin

机译:时空中的冰岛羽流:北大西洋裂谷边缘的Sr-Nd-Pb-Hf研究

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摘要

New Sr-Nd-Pb-Hf data require the existence of at least four mantle components in the genesis of basalts from the the North Atlantic Igneous Province (NAIP): (1) one (or more likely a small range of) enriched component(s) within the Iceland plume, (2) a depleted component within the Iceland plume (distinct from the shallow N-MORB source), (3) a depleted sheath surrounding the plume and (4) shallow N-MORB source mantle. These components have been available since the major phase of igneous activity associated with plume head impact during Paleogene times. In Hf-Nd isotope space, samples from Iceland, DSDP Leg 49 (Sites 407, 408 and 409), ODP Legs 152 and 163 (southeast Greenland margin), the Reykjanes Ridge, Kolbeinsey Ridge and DSDP Leg 38 (Site 348) define fields that are oblique to the main ocean island basalt array and extend toward a component with higher ~(176)Hf/~(177)Hf than the N-MORB source available prior to arrival of the plume, as indicated by the compositions of Cretaceous basalts from Goban Spur (~95 Ma). Aside from Goban Spur, only basalts from Hatton Bank on the oceanward side of the Rockall Plateau (DSDP Leg 81) lie consistently within the field of N-MORB, which indicates that the compositional influence of the plume did not reach this far south and east ~55 Ma ago. Thus, Hf-Nd isotope systematics are consistent with previous studies which indicate that shallow MORB-source mantle does not represent the depleted component within the Iceland plume [Thirlwall, J. Geol. Soc. London 152 (1995) 991-996; Hards et al., J. Geol Soc. London 152 (1995) 1003-1009; Fitton et a., Earth Planet. Sci. Lett. 153 (1997) 197-208]. They also indicate that the depleted component is a long-lived and intrinsic feature of the Iceland plume, generated during an ancient melting event in which a mineral (such as garnet) with a high Lu/Hf was a residual phase. Collectively, these data suggest a model for the Iceland plume in which a heterogeneous core, derived from the lower mantle, consists of 'enriched' streaks or blobs dispersed in a more depleted matrix. A distinguishing feature of both the enriched and depleted components is high Nb/Y for a given Zr/Y (i.e. positive ΔNb), but the enriched component has higher Sr and Pb isotope ratios, combined with lower εNd and εHf. This heterogeneous core is surrounded by a sheath of depleted material, similar to the depleted component of the Iceland plume in its εNd and εHf, but with lower ~(87)Sr/~(86)Sr, ~(208)Pb/~(204)Pb and negative ΔNb; this material was probably entrained from near the 670 km discontinuity when the plume stalled at the boundary between the upper and lower
机译:新的Sr-Nd-Pb-Hf数据要求在北大西洋火成岩省(NAIP)的玄武岩成因中至少存在四个地幔组分:(1)一种(或更可能是一小部分)富集组分( s)在冰岛羽流内,(2)冰岛羽流内的枯竭成分(与浅N-MORB源不同),(3)羽流周围的贫鞘,和(4)浅N-MORB源地幔。自古近纪时期与羽状头部撞击相关的火成活动的主要阶段以来,这些成分就已经存在。在Hf-Nd同位素空间中,来自冰岛,DSDP腿49(站点407、408和409),ODP腿152和163(格陵兰东南边缘),雷克雅尼斯海脊,Kolbeinsey脊和DSDP腿38(站点348)的样本定义了字段倾斜于主要海洋岛玄武岩阵列,并延伸到比羽状流到达之前可用的N-MORB源高〜(176)Hf /〜(177)Hf的成分,如白垩纪玄武岩的成分所示来自Goban Spur(〜95 Ma)。除了Goban Spur以外,只有Rockall高原向海一侧的Hatton Bank的玄武岩(DSDP Leg 81)始终位于N-MORB区域内,这表明烟羽的成分影响并没有延伸到这么远的南部和东部。 〜55 Ma以前。因此,Hf-Nd同位素系统学与以前的研究一致,后者表明浅层的MORB源地幔并不代表冰岛羽流中的枯竭成分[Thirlwall,J. Geol。Chem.Lett。,1987,5,1897]。 Soc。伦敦152(1995)991-996; Hards等人,J.Geol Soc.Chem.Sci。伦敦152(1995)1003-1009; Fitton等,《地球》。科学来吧153(1997)197-208]。他们还表明,贫化的成分是冰岛羽状流的一种长期存在的内在特征,它是在古代融化过程中产生的,其中高Lu / Hf的矿物(例如石榴石)是残留相。总的来说,这些数据提出了冰岛羽状流的模型,其中来自下地幔的非均质岩心由分散在更枯竭基质中的“富集”条纹或斑点组成。对于给定的Zr / Y,富集和贫化组分的一个显着特征是Nb / Y高(即正ΔNb),但富集的Sr和Pb同位素比更高,而εNd和εHf更低。该异质核被贫化物质的鞘层包围,类似于冰岛烟羽的εNd和εHf的贫化成分,但〜(87)Sr /〜(86)Sr,〜(208)Pb /〜( 204)Pb和负ΔNb;当羽流停滞在上下边界之间时,这种材料可能是从670 km不连续处附近夹带的

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